US6737293B2

Manufacturing of a thin film inorganic light emitting diode

Summary by NHIP

ZnS Thin Film LED Method

The method manufactures thin film inorganic light emitting diode devices by precipitating zinc sulfide nanoparticles doped with copper or manganese ions, washing them via ultrafiltration or diafiltration, and coating the dispersion between conductive electrodes. Distinctive elements include the double jet precipitation principle, optional polyphosphate agglomeration prevention, and specific electrode materials like indium tin oxide or polythiophene/polyanion complexes.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Nanoparticle dispersions of ZnS doped with a luminescent center are prepared by precipitation from aqueous solutions. When such dispersions are coated between conductive electrodes a Thin Film Inorganic Light Emitting Diode device is obtained.

US6737293B2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 16 January 2022, 4.7 years ago.

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14 claims: 2 independent, 12 dependent

  1. 1
    Broadest claimClaim Score 52, average(NHIP)A method for manufacturing a Thin Film Inorganic Light Emitting Diode device, said method comprising the following steps, in order:(1) preparing a nanoparticle dispersion of ZnS doped with a luminescent centre by precipitation from appropriate aqueous solutions comprising zinc ions, sulfide ions and dopant ions, (2) washing said dispersion of doped ZnS to remove non-precipitated ions, (3) coating onto a first conductive electrode said washed dispersion of doped ZnS, optionally after admixture with a binder, (4) applying on top of said coated layer resulting from step (3) a second conductive electrode, with the proviso that at least one of said first and second electrode is transparent.
  2. 14
    A Thin Film Inorganic Light Emitting Diode device manufactured according to a method for manufacturing a Thin Film Inorganic Light Emitting Diode device, said method comprising the following steps, in order:(1) preparing a nanoparticle dispersion of ZnS doped with a luminescent center by precipitation from appropriate aqueous solutions comprising zinc ions, sulfide ions and dopant ions, (2) washing said dispersion of doped ZnS to remove non-precipitated ions, (3) coating onto a first conductive electrode said washed dispersion of doped ZnS, optionally after admixture with a binder, and (4) applying on top of said coated layer resulting from step (3) a second conductive electrode, with the proviso that at least one of said first and second electrodes is transparent.